393 lines
12 KiB
C
393 lines
12 KiB
C
/*
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* ***** BEGIN GPL LICENSE BLOCK *****
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* The Original Code is Copyright (C) 2005 by the Blender Foundation.
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* All rights reserved.
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*
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* Contributor(s): Daniel Dunbar
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* Ton Roosendaal,
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* Ben Batt,
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* Brecht Van Lommel,
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* Campbell Barton
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*
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* ***** END GPL LICENSE BLOCK *****
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*
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*/
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/** \file blender/modifiers/intern/MOD_mask.c
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* \ingroup modifiers
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*/
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#include "MEM_guardedalloc.h"
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#include "BLI_utildefines.h"
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#include "BLI_listbase.h"
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#include "BLI_ghash.h"
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#include "DNA_armature_types.h"
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#include "DNA_meshdata_types.h"
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#include "DNA_modifier_types.h"
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#include "DNA_object_types.h"
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#include "BKE_action.h" /* BKE_pose_channel_find_name */
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#include "BKE_cdderivedmesh.h"
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#include "BKE_library_query.h"
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#include "BKE_modifier.h"
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#include "BKE_deform.h"
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#include "depsgraph_private.h"
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#include "DEG_depsgraph_build.h"
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#include "BLI_strict_flags.h"
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static void copyData(ModifierData *md, ModifierData *target)
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{
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#if 0
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MaskModifierData *mmd = (MaskModifierData *) md;
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MaskModifierData *tmmd = (MaskModifierData *) target;
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#endif
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modifier_copyData_generic(md, target);
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}
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static CustomDataMask requiredDataMask(Object *UNUSED(ob), ModifierData *UNUSED(md))
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{
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return CD_MASK_MDEFORMVERT;
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}
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static void foreachObjectLink(
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ModifierData *md, Object *ob,
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ObjectWalkFunc walk, void *userData)
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{
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MaskModifierData *mmd = (MaskModifierData *)md;
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walk(userData, ob, &mmd->ob_arm, IDWALK_NOP);
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}
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static void updateDepsgraph(ModifierData *md,
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struct Main *UNUSED(bmain),
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struct Scene *UNUSED(scene),
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Object *UNUSED(ob),
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struct DepsNodeHandle *node)
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{
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MaskModifierData *mmd = (MaskModifierData *)md;
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if (mmd->ob_arm) {
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bArmature *arm = (bArmature *)mmd->ob_arm->data;
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/* Tag relationship in depsgraph, but also on the armature. */
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/* TODO(sergey): Is it a proper relation here? */
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DEG_add_object_relation(node, mmd->ob_arm, DEG_OB_COMP_TRANSFORM, "Mask Modifier");
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arm->flag |= ARM_HAS_VIZ_DEPS;
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}
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}
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static DerivedMesh *applyModifier(ModifierData *md, Object *ob,
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DerivedMesh *dm,
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ModifierApplyFlag UNUSED(flag))
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{
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MaskModifierData *mmd = (MaskModifierData *)md;
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const bool found_test = (mmd->flag & MOD_MASK_INV) == 0;
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DerivedMesh *result = NULL;
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GHash *vertHash = NULL, *edgeHash, *polyHash;
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GHashIterator gh_iter;
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MDeformVert *dvert, *dv;
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int numPolys = 0, numLoops = 0, numEdges = 0, numVerts = 0;
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int maxVerts, maxEdges, maxPolys;
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int i;
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const MVert *mvert_src;
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const MEdge *medge_src;
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const MPoly *mpoly_src;
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const MLoop *mloop_src;
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MPoly *mpoly_dst;
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MLoop *mloop_dst;
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MEdge *medge_dst;
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MVert *mvert_dst;
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int *loop_mapping;
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dvert = dm->getVertDataArray(dm, CD_MDEFORMVERT);
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if (dvert == NULL) {
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return found_test ? CDDM_from_template(dm, 0, 0, 0, 0, 0) : dm;
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}
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/* Overview of Method:
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* 1. Get the vertices that are in the vertexgroup of interest
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* 2. Filter out unwanted geometry (i.e. not in vertexgroup), by populating mappings with new vs old indices
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* 3. Make a new mesh containing only the mapping data
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*/
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/* get original number of verts, edges, and faces */
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maxVerts = dm->getNumVerts(dm);
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maxEdges = dm->getNumEdges(dm);
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maxPolys = dm->getNumPolys(dm);
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/* check if we can just return the original mesh
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* - must have verts and therefore verts assigned to vgroups to do anything useful
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*/
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if (!(ELEM(mmd->mode, MOD_MASK_MODE_ARM, MOD_MASK_MODE_VGROUP)) ||
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(maxVerts == 0) || BLI_listbase_is_empty(&ob->defbase))
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{
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return dm;
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}
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/* if mode is to use selected armature bones, aggregate the bone groups */
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if (mmd->mode == MOD_MASK_MODE_ARM) { /* --- using selected bones --- */
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Object *oba = mmd->ob_arm;
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bPoseChannel *pchan;
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bDeformGroup *def;
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bool *bone_select_array;
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int bone_select_tot = 0;
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const int defbase_tot = BLI_listbase_count(&ob->defbase);
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/* check that there is armature object with bones to use, otherwise return original mesh */
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if (ELEM(NULL, oba, oba->pose, ob->defbase.first))
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return dm;
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/* determine whether each vertexgroup is associated with a selected bone or not
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* - each cell is a boolean saying whether bone corresponding to the ith group is selected
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* - groups that don't match a bone are treated as not existing (along with the corresponding ungrouped verts)
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*/
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bone_select_array = MEM_mallocN((size_t)defbase_tot * sizeof(char), "mask array");
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for (i = 0, def = ob->defbase.first; def; def = def->next, i++) {
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pchan = BKE_pose_channel_find_name(oba->pose, def->name);
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if (pchan && pchan->bone && (pchan->bone->flag & BONE_SELECTED)) {
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bone_select_array[i] = true;
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bone_select_tot++;
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}
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else {
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bone_select_array[i] = false;
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}
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}
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/* verthash gives mapping from original vertex indices to the new indices (including selected matches only)
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* key = oldindex, value = newindex
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*/
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vertHash = BLI_ghash_int_new_ex("mask vert gh", (unsigned int)maxVerts);
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/* add vertices which exist in vertexgroups into vertHash for filtering
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* - dv = for each vertex, what vertexgroups does it belong to
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* - dw = weight that vertex was assigned to a vertexgroup it belongs to
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*/
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for (i = 0, dv = dvert; i < maxVerts; i++, dv++) {
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MDeformWeight *dw = dv->dw;
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bool found = false;
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int j;
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/* check the groups that vertex is assigned to, and see if it was any use */
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for (j = 0; j < dv->totweight; j++, dw++) {
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if (dw->def_nr < defbase_tot) {
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if (bone_select_array[dw->def_nr]) {
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if (dw->weight != 0.0f) {
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found = true;
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break;
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}
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}
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}
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}
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if (found_test != found) {
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continue;
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}
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/* add to ghash for verts (numVerts acts as counter for mapping) */
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BLI_ghash_insert(vertHash, SET_INT_IN_POINTER(i), SET_INT_IN_POINTER(numVerts));
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numVerts++;
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}
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/* free temp hashes */
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MEM_freeN(bone_select_array);
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}
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else { /* --- Using Nominated VertexGroup only --- */
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int defgrp_index = defgroup_name_index(ob, mmd->vgroup);
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/* if no vgroup (i.e. dverts) found, return the initial mesh */
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if (defgrp_index == -1)
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return dm;
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/* hashes for quickly providing a mapping from old to new - use key=oldindex, value=newindex */
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vertHash = BLI_ghash_int_new_ex("mask vert2 bh", (unsigned int)maxVerts);
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/* add vertices which exist in vertexgroup into ghash for filtering */
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for (i = 0, dv = dvert; i < maxVerts; i++, dv++) {
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const bool found = defvert_find_weight(dv, defgrp_index) != 0.0f;
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if (found_test != found) {
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continue;
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}
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/* add to ghash for verts (numVerts acts as counter for mapping) */
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BLI_ghash_insert(vertHash, SET_INT_IN_POINTER(i), SET_INT_IN_POINTER(numVerts));
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numVerts++;
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}
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}
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/* hashes for quickly providing a mapping from old to new - use key=oldindex, value=newindex */
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edgeHash = BLI_ghash_int_new_ex("mask ed2 gh", (unsigned int)maxEdges);
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polyHash = BLI_ghash_int_new_ex("mask fa2 gh", (unsigned int)maxPolys);
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mvert_src = dm->getVertArray(dm);
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medge_src = dm->getEdgeArray(dm);
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mpoly_src = dm->getPolyArray(dm);
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mloop_src = dm->getLoopArray(dm);
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/* overalloc, assume all polys are seen */
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loop_mapping = MEM_mallocN(sizeof(int) * (size_t)maxPolys, "mask loopmap");
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/* loop over edges and faces, and do the same thing to
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* ensure that they only reference existing verts
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*/
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for (i = 0; i < maxEdges; i++) {
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const MEdge *me = &medge_src[i];
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/* only add if both verts will be in new mesh */
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if (BLI_ghash_haskey(vertHash, SET_INT_IN_POINTER(me->v1)) &&
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BLI_ghash_haskey(vertHash, SET_INT_IN_POINTER(me->v2)))
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{
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BLI_ghash_insert(edgeHash, SET_INT_IN_POINTER(i), SET_INT_IN_POINTER(numEdges));
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numEdges++;
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}
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}
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for (i = 0; i < maxPolys; i++) {
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const MPoly *mp_src = &mpoly_src[i];
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const MLoop *ml_src = &mloop_src[mp_src->loopstart];
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bool ok = true;
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int j;
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for (j = 0; j < mp_src->totloop; j++, ml_src++) {
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if (!BLI_ghash_haskey(vertHash, SET_INT_IN_POINTER(ml_src->v))) {
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ok = false;
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break;
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}
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}
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/* all verts must be available */
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if (ok) {
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BLI_ghash_insert(polyHash, SET_INT_IN_POINTER(i), SET_INT_IN_POINTER(numPolys));
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loop_mapping[numPolys] = numLoops;
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numPolys++;
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numLoops += mp_src->totloop;
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}
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}
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/* now we know the number of verts, edges and faces,
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* we can create the new (reduced) mesh
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*/
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result = CDDM_from_template(dm, numVerts, numEdges, 0, numLoops, numPolys);
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mpoly_dst = CDDM_get_polys(result);
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mloop_dst = CDDM_get_loops(result);
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medge_dst = CDDM_get_edges(result);
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mvert_dst = CDDM_get_verts(result);
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/* using ghash-iterators, map data into new mesh */
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/* vertices */
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GHASH_ITER (gh_iter, vertHash) {
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const MVert *v_src;
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MVert *v_dst;
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const int i_src = GET_INT_FROM_POINTER(BLI_ghashIterator_getKey(&gh_iter));
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const int i_dst = GET_INT_FROM_POINTER(BLI_ghashIterator_getValue(&gh_iter));
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v_src = &mvert_src[i_src];
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v_dst = &mvert_dst[i_dst];
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*v_dst = *v_src;
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DM_copy_vert_data(dm, result, i_src, i_dst, 1);
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}
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/* edges */
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GHASH_ITER (gh_iter, edgeHash) {
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const MEdge *e_src;
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MEdge *e_dst;
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const int i_src = GET_INT_FROM_POINTER(BLI_ghashIterator_getKey(&gh_iter));
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const int i_dst = GET_INT_FROM_POINTER(BLI_ghashIterator_getValue(&gh_iter));
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e_src = &medge_src[i_src];
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e_dst = &medge_dst[i_dst];
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DM_copy_edge_data(dm, result, i_src, i_dst, 1);
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*e_dst = *e_src;
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e_dst->v1 = GET_UINT_FROM_POINTER(BLI_ghash_lookup(vertHash, SET_UINT_IN_POINTER(e_src->v1)));
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e_dst->v2 = GET_UINT_FROM_POINTER(BLI_ghash_lookup(vertHash, SET_UINT_IN_POINTER(e_src->v2)));
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}
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/* faces */
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GHASH_ITER (gh_iter, polyHash) {
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const int i_src = GET_INT_FROM_POINTER(BLI_ghashIterator_getKey(&gh_iter));
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const int i_dst = GET_INT_FROM_POINTER(BLI_ghashIterator_getValue(&gh_iter));
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const MPoly *mp_src = &mpoly_src[i_src];
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MPoly *mp_dst = &mpoly_dst[i_dst];
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const int i_ml_src = mp_src->loopstart;
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const int i_ml_dst = loop_mapping[i_dst];
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const MLoop *ml_src = &mloop_src[i_ml_src];
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MLoop *ml_dst = &mloop_dst[i_ml_dst];
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DM_copy_poly_data(dm, result, i_src, i_dst, 1);
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DM_copy_loop_data(dm, result, i_ml_src, i_ml_dst, mp_src->totloop);
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*mp_dst = *mp_src;
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mp_dst->loopstart = i_ml_dst;
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for (i = 0; i < mp_src->totloop; i++) {
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ml_dst[i].v = GET_UINT_FROM_POINTER(BLI_ghash_lookup(vertHash, SET_UINT_IN_POINTER(ml_src[i].v)));
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ml_dst[i].e = GET_UINT_FROM_POINTER(BLI_ghash_lookup(edgeHash, SET_UINT_IN_POINTER(ml_src[i].e)));
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}
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}
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MEM_freeN(loop_mapping);
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/* why is this needed? - campbell */
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/* recalculate normals */
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result->dirty |= DM_DIRTY_NORMALS;
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/* free hashes */
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BLI_ghash_free(vertHash, NULL, NULL);
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BLI_ghash_free(edgeHash, NULL, NULL);
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BLI_ghash_free(polyHash, NULL, NULL);
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/* return the new mesh */
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return result;
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}
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ModifierTypeInfo modifierType_Mask = {
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/* name */ "Mask",
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/* structName */ "MaskModifierData",
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/* structSize */ sizeof(MaskModifierData),
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/* type */ eModifierTypeType_Nonconstructive,
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/* flags */ eModifierTypeFlag_AcceptsMesh |
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eModifierTypeFlag_SupportsMapping |
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eModifierTypeFlag_SupportsEditmode,
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/* copyData */ copyData,
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/* deformVerts */ NULL,
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/* deformMatrices */ NULL,
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/* deformVertsEM */ NULL,
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/* deformMatricesEM */ NULL,
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/* applyModifier */ applyModifier,
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/* applyModifierEM */ NULL,
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/* initData */ NULL,
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/* requiredDataMask */ requiredDataMask,
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/* freeData */ NULL,
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/* isDisabled */ NULL,
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/* updateDepsgraph */ updateDepsgraph,
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/* dependsOnTime */ NULL,
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/* dependsOnNormals */ NULL,
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/* foreachObjectLink */ foreachObjectLink,
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/* foreachIDLink */ NULL,
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/* foreachTexLink */ NULL,
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};
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